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巨厚含水层中循环井结构优化设计

董倩 董书君 陈韶音 杜中海 周睿

环境工程学报2024,Vol.18Issue(4):1013-1023,11.
环境工程学报2024,Vol.18Issue(4):1013-1023,11.DOI:10.12030/j.cjee.202310049

巨厚含水层中循环井结构优化设计

Optimization design of groundwater circulation well structure in super-thick aquifer

董倩 1董书君 1陈韶音 1杜中海 1周睿1

作者信息

  • 1. 吉林大学石油化工污染场地控制与修复技术国家地方联合工程实验室,长春 130000||吉林大学新能源与环境学院,长春 130000
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摘要

Abstract

Effective remediation of contaminated aquifer using groundwater circulation well(GCW)technology annot be achieved when the thickness of the aquifer is greater than 34.5 m.In this study,the simulation of GCW operation in a super-thick aquifer(STA)with a thickness of 80 m using MODFLOW and MODPATH was conducted to obtain the structure of GCW which is suitable for STAs.Simulation results demonstrate that a circulating zone was generated when the length of well walls section was≤26 m for two-screen GCW,with running period of 1 year and a flow rate of 400 m3·d-1.The maximum vertical length of circulating capture zone(27.5 m)was obtained from the repeated design studies,with the condition of 34 m-well length,two 4 m-long screen sections,one 26 m-long solid section,and a running period of 1 year.The remediation of STA with a thickness of 80 m was not accomplished using the optimized GCW with the maximum vertical length of circulating capture zone(27.5 m).However,multi-filter GCW significantly improved the remediation of STAs by increasing the range of remediation and reducing the ratio of dead zones.For a multi-filter GCW with three screens,the vertical length of the circulating capture zone of 56.52 m was achieved.Furthermore,a multi-filter GCW with four screens of 70.52 m was achieved with a particle recovery rate of 58%and a maximum influence radius of 44.95 m.Therefore,the multi-filter GCW with four screens can meet the requirements for remediating an 80 m-thick STA.These findings provide significant theoretical information for the design of GCW structures in STAs.

关键词

循环井/巨厚含水层/井结构/优化设计/修复技术

Key words

groundwater circulation well/super-thick aquifers/well structure/optimization design/remediation technology

分类

资源环境

引用本文复制引用

董倩,董书君,陈韶音,杜中海,周睿..巨厚含水层中循环井结构优化设计[J].环境工程学报,2024,18(4):1013-1023,11.

基金项目

国家重点研发计划资助项目(2020YFC1808301) (2020YFC1808301)

环境工程学报

OA北大核心CSTPCD

1673-9108

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